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线聚焦谱域光学相干层析成像的分段色散补偿像质优化方法
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作者 杨建文 黄江杰 +1 位作者 何益 史国华 《光电工程》 CAS CSCD 北大核心 2024年第6期1-11,共11页
本研究中搭建了一套用于生物样品成像的线聚焦谱域光学相干层析(LF-SD-OCT)系统,针对系统误差引起的轴向展宽和灵敏度衰减问题,提出了一种分段色散补偿的方法,对成像深度内的二阶和三阶色散相位进行了补偿,并通过平面镜和透明胶带样品... 本研究中搭建了一套用于生物样品成像的线聚焦谱域光学相干层析(LF-SD-OCT)系统,针对系统误差引起的轴向展宽和灵敏度衰减问题,提出了一种分段色散补偿的方法,对成像深度内的二阶和三阶色散相位进行了补偿,并通过平面镜和透明胶带样品成像实验来验证该方法的有效性和可靠性。通过本文提出的分段色散补偿方法和其他成熟方法的联合应用,系统在获得57.2 kHz的等效A-scan速率的同时,轴向分辨率提升至6.76μm,对胶带样品2 mm深度范围内及水果样品0.3 mm深度范围内进行了较清晰成像。实验结果表明,该方法可以在兼顾处理效率的同时提高全深度轴向分辨率和灵敏度,未来有望广泛实现线聚焦谱域光学相干层析的生物医学成像应用。 展开更多
关键词 线聚焦谱域OCT 色散补偿 成像质量 生物样品成像
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Three-Dimensional Sub-100 nm Super-Resolution Imaging of Biological Samples Using a Phase Ramp in the Objective Pupil 被引量:5
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作者 David Baddeley Mark B. Cannell Christian Soeller 《Nano Research》 SCIE EI CAS CSCD 2011年第6期589-598,共10页
Localisation microscopy overcomes the diffraction limit by measuring the position of individual molecules to obtain optical images with a lateral resolution better than 30 nm. Single molecule localisation microscopy w... Localisation microscopy overcomes the diffraction limit by measuring the position of individual molecules to obtain optical images with a lateral resolution better than 30 nm. Single molecule localisation microscopy was originally demonstrated only in two dimensions but has recently been extended to three dimensions. Here we develop a new approach to three-dimensional (3D) localisation microscopy by engineering of the point-spread function (PSF) of a fluorescence microscope. By introducing a linear phase gradient between the two halves of the objective pupil plane the PSF is split into two lateral lobes whose relative position depends on defocus. Calculations suggested that the phase gradient resulting from the very small tolerances in parallelism of conventional slides made from float glass would be sufficient to generate a two-lobed PSF. We demonstrate that insertion of a suitably chosen microscope slide that occupies half the objective aperture combined with a novel fast fitting algorithm for 3D localisation estimation allows nanoscopic imaging with detail resolution well below 100 nm in all three dimensions (standard deviations of 20, 16, and 42 nm in x, y, and z directions, respectively). The utility of the approach is shown by imaging the complex 3D distribution of microtubules in cardiac muscle cells that were stained with conventional near infrared fluorochromes. The straightforward optical setup, minimal hardware requirements and large axial localisation range make this approach suitable for many nanoscopic imaging applications. 展开更多
关键词 Single molecules NANOSCOPY point-spread function engineering IMMUNOCYTOCHEMISTRY localisation microscopy
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